• Title/Summary/Keyword: Ursane-type

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Ursane-Type Triterpenoids from the Aerial Parts of Potentilla discolor

  • Jang, Dae-Sik;Kim, Jong-Min;Lee, Ga-Young;Kim, Joo-Hwan;Kim, Jin-Sook
    • Journal of Applied Biological Chemistry
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    • v.49 no.2
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    • pp.48-50
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    • 2006
  • Four ursane-type triterpenoids, ursolic acid (1), 23-hydroxyursolic acid (2), corosolic acid (3), and tormentic acid (4), and a phytosterol, ${\beta}-sitosterol-3-O-{\beta}-D-glucoside$, were isolated from an EtOAcsoluble extract of the aerial parts of Potentilla discolor. The structures of 1-4 were identified by spectroscopic methods, particularly by extensive NMR studies. This is the first report on the isolation of compounds 1-4 from this plant.

Structure-Activity Relationship of Triterpenoids Isolated from Mitragyna stipulosa on Cytotoxicity

  • Tapondjou, Leon Azefack;Lontsi, David;Sondengam, Beiham Luc;Choudhary, Muhammad Iqbal;Park, Hee-Juhn;Choi, Jong-Won;Lee, Kyung-Tae
    • Archives of Pharmacal Research
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    • v.25 no.3
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    • pp.270-274
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    • 2002
  • Chromatographic separation of the stem bark extract of Mitragyna stipulosa afforded triterpene derivatives ursolic acid (1), quinovic acid (2), quinivic acid $3-O-{\beta}-D-glucopyranoside$ (3, quinovin glycoside C), quinovic acid 3-O-[$(2-O-sulfo)-{\beta}-D-quinovopyranoside$] (4, zygophyloside D) and quinovic acid $3-O-{\beta}-D-quinovopyranosyl-27-O-{\beta}-D-glucopyranosyl$ ester (5, zygophyloside B). These five compounds were subjected to the cytotoxicity on MTT assay system. Compound 1 among tested showed the most potent cytotoxicity. Quinovic acid showed less potent cytotoxicity than ursolic acid and sugar linkages to 2 decreased the cytotoxicity. Compound 4 more potent than 3 with indicate that the sulfonyl group significantly enhances the activity. This indicates that the glycosidic linkage in ursane-type triterpenoids has mainly negative effect on cytotoxicity unlike in oleanane-type glycosides.

Anti-complement Activity of Triterpenoids from the Whole Plant of Patrinia saniculaefolia

  • An, Ren-Bo;Na, Min-Kyun;Min, Byung-Sun;Lee, Hyeong-Kyu;Bae, Ki-Hwan
    • Natural Product Sciences
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    • v.14 no.4
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    • pp.249-253
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    • 2008
  • Two oleanane-type triterpenes (1, 2) and their glycosides (4-6), and one ursane-type triterpene (3) have been isolated from a methanolic extract of Patrinia saniculaefolia Hemsley (Valerianaceae) through repeated silica gel and reversed-phase C-18 column chromatography. Their chemical structures were determined as oleanolic acid (1), oleanonic acid (2), 23-hydroxyursolic acid (3), 3-O-${\alpha}$-L-arabinopyranosyl-oleanolic acid (4), 3-O-${\beta}$-D-glucopyranosyl-oleanolic acid (5), and oleanolic acid 3-O-[${\alpha}$-D-xylopyranosyl-($1{\rightarrow}3$)-${\beta}$-D-glucuronopyranoside-6-O-butyl-ester] (6) on the basis of their MS, $^1H$-, and $^{13}C$-NMR spectral data. All compounds were isolated from the whole plant of the P. saniculaefolia for the first time. These compounds were examined for their anti-complement activity against the classical pathway of the complement system. Among them, compounds 1 - 3 exhibited anti-complement activity with $IC_{50}$ values of 470.1, 212.2, and 121.0 ${\mu}M$, respectively, whereas compounds 4 - 6 were inactive. These results suggest that the carbonyl or hydroxy group at C-3 in the oleananeand/or ursane-triterpenes are important for the anti-complement activity against the classical pathway.

Chemical Constituents from Sorbus commixta

  • Na, Min-Kyun;An, Ren-Bo;Min, Byung-Sun;Lee, Sang-Myung;Kim, Young-Ho;Bae, Ki-Hwan
    • Natural Product Sciences
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    • v.8 no.2
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    • pp.62-65
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    • 2002
  • Two lupane-type triterpenes, lupenone (1) and lupeol (2), a phytosterol, ${\beta}-sitosterol$ (3), two ursane-type triterpenes, $3{\beta}-acetoxy$ ursolic acid (4) and ursolic acid (5), a lignan, (-)-lyoniresinol $3a-O-{\beta}-D-xylopyranoside$ (6), and two flavanol glycosides, $catechin-7-O-{\beta}-D-xylopyranoside$ (7) and $catechin-7-O-{\beta}-D-apiofuranoside$ (8) were isolated from the stem bark of Sorbus commixta (Rosaceae). Their chemical structures were identified by physicochemical and spectroscopic methods.

Constituents of the Aerial Parts of Agrimonia pilosa

  • An, Ren-Bo;Kim, Hyun-Chul;Jeong, Gil-Saeng;Oh, Seung-Hwan;Oh, Hyun-Cheol;Kim, Youn-Chul
    • Natural Product Sciences
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    • v.11 no.4
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    • pp.196-198
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    • 2005
  • Four ursane type triterpenes have been isolated from the methanolic extract of the aerial parts of Agrimonia pilosa Ledeb. (Rosaceae) through repeated silica gel and reverse-phase C-18 column chromatography. Their chemical structures were elucidated as ursolic acid (1), pomolic acid (2), tormentic acid (3), and corosolic acid (4) on the basis of their MS, $^1H-$, and $^{13}C-NMR$ spectral data. Compounds 2 and 4 were isolated from the genes of Agrimonia for the first time.

Cytotoxic Triterpenes from Crataegus pinnatifida

  • Min, Byung-Sun;Kim, Young-Ho;Lee, Sang-Myung;Jung, Hyun-Ju;Lee, Jun-Sung;Na, Min-Kyun;:lee, Chong-Ock;Lee, Jong-Pil;Bae, Ki-Hwan
    • Archives of Pharmacal Research
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    • v.23 no.2
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    • pp.155-158
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    • 2000
  • Bioassay-guided fractionation of Crataegus pinnatifida (Rosaceae) gave two cytotoxic ursane-type triterpenes which were identified as uvaol (1) and ursolic acid (2) by physicochemical and spectroscopic methods. 3-Oxo-ursolic acid (3) was synthesized from ursolic acid (2) by Jones method. The cytotoxic activities of these compounds were tested against murine L1210 and human cancer cell lines (A549, SK-OV-3, SK-MEL-2, XF498, and HCT15) in vitro. Compounds 1 and 2 showed moderate cytotoxicities against L1210, whereas they showed weak activities against human cancer cell lines. However compound 3 exhibited potent cytotoxic activities both in murine and in human cancer cell lines.

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Constituents of the Stems of Rumex japonicus with Advanced Glycation End Products (AGEs) and Rat Lens Aldose Reductase (RLAR) Inhibitory Activity

  • Kim, Jong-Min;Lee, Yun-Mi;Jang, Dae-Sik;Kim, Jin-Sook
    • Journal of Applied Biological Chemistry
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    • v.49 no.1
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    • pp.24-27
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    • 2006
  • Four ursane-type triterpenoids, 2${\alpha}$,3${\alpha}$,19${\alpha}$-trihydroxy-24-norurs-4(23),12-dien-28-oic acid (1), 4(R),23-epoxy-2${\alpha}$,3${\alpha}$,19${\alpha}$-trihydroxy-24-norurs-12-en-28-oic acid (2), myrianthic acid (3), and tormentic acid (4), and a phenolic compound, ethyl gallate (5), from an EtOAc-soluble extract of the stems of Rumex japonicus, were subjected to in vitro bioassays to evaluate advanced glycation end products (AGEs) and rat lens aldose reductase (RLAR) inhibitory activity. Compounds 1 and 5 exhibited a significant inhibitory activity on AGEs formation with $IC_{50}$ value of 87 ${\mu}M$ and on RLAR with $IC_{50}$ value of 14.3 ${\mu}M$, respectively. Ethyl gallate (5) was isolated for the first time from this plant.

Development of Biologically Active Compounds from Edible Plant Sources XXII. Triterpenoids from the Aerial Parts of Sajabalssuk (Artemisia princeps PAMPANINI) (식용식물자원으로부터 활성물질의 탐색-XXII. 사자발쑥(Artemisia princeps PAMPANINI)의 지상부로부터 Triterpenoid의 분리)

  • Bang, Myun-Ho;Cho, Jin-Gyeong;Song, Myoung-Chong;Lee, Dae-Young;Han, Min-Woo;Chung, Hae-Gon;Jeong, Tae-Sook;Lee, Kyung-Tae;Choi, Myung-Sook;Baek, Nam-In
    • Applied Biological Chemistry
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    • v.51 no.3
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    • pp.223-227
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    • 2008
  • The aerial parts of Sajabalssuk (Artemisia princeps PAMPANINI, Sajabalssuk) was extracted with 80% aqueous MeOH, and the concentrated extract was partitioned with EtOAc, n-BuOH and $H_2O$, successively. From the EtOAc fraction, three cycloartane-type triterpnoids and one ursane-type triterpenoid were isolated through the repeated silica gel, ODS and Sephadex LH-20 column chromatographies. From the results of physico-chemical data including NMR, MS and IR, the chemical structures of the triterpenoids were determined as wrightial (1), wrightial acetate (2), 27-norcycloart-20(21)-ene-25-al-3${\beta}$-ol acetate (3) and ursolic acid (4). No report has been found for isolation of compound 3 in the literature so far, and compounds 1, 2 and 3 were the first to be isolated from Sajabalssuk (Artemisia princeps PAMPANINI, Sajabalssuk). Also, compound 1 showed Acyl-CoA:Cholesterol acyltransferase (hACAT-1) and hACAT-2 inhibitory activity with the $IC_{50}$ values of 33.0 and 45.0 ${\mu}g/ml$, respectively. Compounds 2 and 3 inhibited hACAT-1 activity with the $IC_{50}$ values of 12.0 and 16.0 ${\mu}g/ml$, respectively.